Clint Chapple
Affiliations: | Biochemistry | Purdue University, West Lafayette, IN, United States |
Area:
ligninWebsite:
http://www.purdue.edu/discoverypark/energy/directory/view.php?id=75Google:
"Clint Chapple"Bio:
http://www.gradschool.purdue.edu/pulse/faculty_cascade.cfm?alias=chapple
https://ag.purdue.edu/biochem/Pages/ProfilePages/chapple.aspx
Cross-listing: Chemistry Tree
Parents
Sign in to add mentorBrian E. Ellis | grad student | 1985-1989 | University of Guelph |
Christopher R. Somerville | post-doc | 1990-1993 | Michigan State |
Children
Sign in to add traineeJohn M Humphreys | grad student | Purdue | |
Amber M. Shirley | grad student | 2002 | Purdue (Chemistry Tree) |
Michael G. Thompson | grad student | 2000-2002 | University of Oklahoma |
Matthew R. Hemm | grad student | 2003 | Purdue (Chemistry Tree) |
Taksina Sinlapadech | grad student | 2006 | Purdue (Chemistry Tree) |
Christopher M. Fraser | grad student | 2001-2007 | Bioanalytical Computing |
Jake Stout | grad student | 2001-2007 | University of Manitoba |
Jing-Ke Weng | grad student | 2009 | Purdue (Chemistry Tree) |
Rochus Franke | post-doc | 1999-2001 | University of Bonn (Chemistry Tree) |
Xu Li | post-doc | 2006-2010 | NCSU |
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Publications
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Kim JI, Hidalgo-Shrestha C, Bonawitz ND, et al. (2021) Spatio-temporal control of phenylpropanoid biosynthesis by inducible complementation of a cinnamate 4-hydroxylase mutant. Journal of Experimental Botany |
Mao X, Weake VM, Chapple C. (2019) Mediator function in plant metabolism revealed by large-scale biology. Journal of Experimental Botany |
Kim JI, Zhang X, Pascuzzi PE, et al. (2019) Glucosinolate and phenylpropanoid biosynthesis are linked by proteasome-dependent degradation of PAL. The New Phytologist |
Yang H, Zhang X, Luo H, et al. (2019) Overcoming cellulose recalcitrance in woody biomass for the lignin-first biorefinery. Biotechnology For Biofuels. 12: 171 |
Mao X, Kim JI, Wheeler MT, et al. (2019) Mutation of Mediator subunit CDK8 counteracts the stunted growth and salicylic acid hyper-accumulation phenotypes of an Arabidopsis MED5 mutant. The New Phytologist |
Muro-Villanueva F, Mao X, Chapple C. (2019) Linking phenylpropanoid metabolism, lignin deposition, and plant growth inhibition. Current Opinion in Biotechnology. 56: 202-208 |
Dolan WL, Chapple C. (2018) Transcriptome Analysis of Four Mediator Tail Mutants Reveals Overlapping and Unique Functions in Gene Regulation. G3 (Bethesda, Md.) |
Guo L, Wang P, Jaini R, et al. (2018) Dynamic modeling of subcellular phenylpropanoid metabolism in Arabidopsis lignifying cells. Metabolic Engineering |
Wang P, Guo L, Jaini R, et al. (2018) A C isotope labeling method for the measurement of lignin metabolic flux in Arabidopsis stems. Plant Methods. 14: 51 |
Dolan WL, Dilkes BP, Stout JM, et al. (2017) Mediator Complex Subunits MED2, MED5, MED16, and MED23 Genetically Interact in the Regulation of Phenylpropanoid Biosynthesis. The Plant Cell |